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Distributed geographical packet forwarding in wireless sensor and actuator networks - a stochastic optimal control approach

机译:无线传感器和执行器网络中的分布式地理分组转发-随机最优控制方法

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The authors study the issues on distributed geographical packet forwarding in wireless sensor and actuator networks (WSANs) using a stochastic optimal control approach. First, a distributed geographic-informed forwarding (DGIF) scheme is proposed that defines a set of distributed routing policies. Then, the distributed WSAN packet forwarding problem is modelled and analysed from the perspective of stochastic optimal control. The WSAN is viewed as a controlled stochastic system. The routing procedure is determined by the routing policy and system disturbance (e.g. the position uncertainty of remote nodes) jointly. An improved value iteration method is presented to accelerate the convergence of the optimal routing strategy. The reliability-driven routing algorithm (called DGIF-RRP) for emergency applications and the quality-of-serviceaware routing algorithm (called DGIF-QRP) for real-time applications are proposed. Simulations are carried out to evaluate the proposed routing algorithms. The results show that DGIF-RRP and DGIF-QRP significantly outperform two enhanced versions of the Dijkstra??s algorithm in emergency and real-time applications, respectively.
机译:作者研究了使用随机最优控制方法在无线传感器和执行器网络(WSAN)中进行分布式地理分组转发的问题。首先,提出了一种分布式地理信息转发(DGIF)方案,该方案定义了一组分布式路由策略。然后,从随机最优控制的角度对分布式WSAN数据包转发问题进行建模和分析。 WSAN被视为受控的随机系统。路由过程由路由策略和系统干扰(例如,远程节点的位置不确定性)共同确定。提出了一种改进的值迭代方法,以加速最优路由策略的收敛。提出了用于应急应用的可靠性驱动路由算法(称为DGIF-RRP)和用于实时应用的服务质量路由算法(称为DGIF-QRP)。进行仿真以评估所提出的路由算法。结果表明,在紧急和实时应​​用中,DGIF-RRP和DGIF-QRP分别优于Dijkstra算法的两个增强版本。

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